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先进超声技术在评估主动脉僵硬度方面的进展以及人与啮齿动物之间的应用差异。

The Progress of Advanced Ultrasonography in Assessing Aortic Stiffness and the Application Discrepancy between Humans and Rodents.

作者信息

Wu Wenqian, Xie Mingxing, Qiu Hongyu

机构信息

Center for Molecular and Translational Medicine, Institute of Biomedical Science, Georgia State University, Atlanta, GA 30303, USA.

Department of Ultrasound, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, China.

出版信息

Diagnostics (Basel). 2021 Mar 6;11(3):454. doi: 10.3390/diagnostics11030454.

Abstract

Aortic stiffening is a fundamental pathological alteration of atherosclerosis and other various aging-associated vascular diseases, and it is also an independent risk factor of cardiovascular morbidity and mortality. Ultrasonography is a critical non-invasive method widely used in assessing aortic structure, function, and hemodynamics in humans, playing a crucial role in predicting the pathogenesis and adverse outcomes of vascular diseases. However, its applications in rodent models remain relatively limited, hindering the progress of the research. Here, we summarized the progress of the advanced ultrasonographic techniques applied in evaluating aortic stiffness. With multiple illustrative images, we mainly characterized various ultrasound techniques in assessing aortic stiffness based on the alterations of aortic structure, hemodynamics, and tissue motion. We also discussed the discrepancy of their applications in humans and rodents and explored the potential optimized strategies in the experimental research with animal models. This updated information would help to better understand the nature of ultrasound techniques and provide a valuable prospect for their applications in assessing aortic stiffness in basic science research, particularly with small animals.

摘要

主动脉硬化是动脉粥样硬化和其他各种与衰老相关的血管疾病的基本病理改变,也是心血管发病和死亡的独立危险因素。超声检查是一种关键的非侵入性方法,广泛应用于评估人体主动脉结构、功能和血流动力学,在预测血管疾病的发病机制和不良后果方面发挥着至关重要的作用。然而,其在啮齿动物模型中的应用仍然相对有限,阻碍了研究进展。在此,我们总结了应用于评估主动脉僵硬度的先进超声技术的进展。通过多幅说明性图像,我们主要根据主动脉结构、血流动力学和组织运动的改变,对评估主动脉僵硬度的各种超声技术进行了表征。我们还讨论了它们在人类和啮齿动物中的应用差异,并探索了在动物模型实验研究中的潜在优化策略。这些更新的信息将有助于更好地理解超声技术的本质,并为其在基础科学研究中,特别是在小动物中评估主动脉僵硬度的应用提供有价值的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e18/8001300/45ed0ef7c5ee/diagnostics-11-00454-g001.jpg

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